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Digital signal processing for coherent UDWDM passive optical networks Digitale Signalverarbeitung fur koharente UDWDM passive optische Netze

机译:用于Coharent UDWDM无源光网络的连贯UDWDM无源光网络数字信号处理的数字信号处理

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In this contribution, we discuss digital signal processing (DSP) options for coherent ultra-dense wavelength-division multiplexing (UDWDM) passive optical networks (PON). In particular, we focus on the joint reception of several 2.488 Gb/s polarization-division multiplexed differential quadrature phase-shift keying (PDM-DQPSK) upstream signals by the optical line terminal (OLT). Due to the cost-sensitivity in access networks, joint heterodyne detection of multiple upstream channels in the OLT is an attractive solution to reduce the required hardware effort. The main challenge from a DSP perspective is the digital separation and down-conversion of potentially hundreds of channels simultaneously. Since each upstream signal originates from an independent source, the channels are also affected by different clock phase and -frequency offsets, as well as by strong phase noise from the use of tunable lasers. These effects need to be considered and compensated for by the DSP. We discuss algorithms which perform the required compensation and present strategies for real-time implementation of these algorithms on an FPGA platform.
机译:在这一贡献中,我们讨论了用于相干超密集波分复用(UDWDM)无源光网络(PON)的数字信号处理(DSP)选项。特别是,我们专注于光线终端(OLT)的几个2.488GB / S偏振分割多路复用差分正交相移键控(PDM-DQPSK)上游信号的关节接收。由于接入网络的成本敏感性,OLT中多个上游通道的联合外差检测是一种有吸引力的解决方案,可以减少所需的硬件工作。来自DSP透视的主要挑战是同时的潜在数百个通道的数字分离和下降转换。由于每个上游信号源自独立源,因此通道也受到不同时钟相位和 - 频率偏移的影响,以及通过使用可调激光器的强相噪声。这些效果需要被DSP考虑和补偿。我们讨论执行所需补偿的算法,并在FPGA平台上实时执行这些算法的实时实施。

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